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Bunn HF and Poyton RO  (1996) Oxygen sensing and molecular adaptation to hypoxia. Physiol Rev 76(3):839-85

Abstract: This review focuses on the molecular stratagems utilized by bacteria, yeast, and mammals in their adaptation to hypoxia. Among this broad range of organisms, changes in oxygen tension appear to be sensed by heme proteins, with subsequent transfer of electrons along a signal transduction pathway which may depend on reactive oxygen species. These heme-based sensors are generally two-domain proteins. Some are hemokinases, while others are flavohemoproteins [flavohemoglobins and NAD(P)H oxidases]. Hypoxia-dependent kinase activation of transcription factors in nitrogen-fixing bacteria bears a striking analogy to the phosphorylation of hypoxia inducible factor-1 (HIF-1) in mammalian cells. Moreover, redox chemistry appears to play a critical role both in the trans-activation of oxygen-responsive genes in unicellular organisms as well as in the activation of HIF-1. In yeast and bacteria, regulatory operons coordinate expression of genes responsible for adaptive responses to hypoxia and hyperoxia. Similarly, in mammals, combinatorial interactions of HIF-1 with other identified transcription factors are required for the hypoxic induction of physiologically important genes.

Status: Published Type: Journal Article | Review PubMed ID: 8757790

Topics addressed in this paper

Number of different genes curated to this paper: 36

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Topics Genes linked to topics (#1 - 10 )
AAC1 AAC3 ANB1 COR1 COX1 COX2 COX3 COX4 COX5A COX5B
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Topics Genes linked to topics (#11 - 20 )
COX6 COX7 COX8 COX9 CTA1 CTT1 CYB2 CYC1 CYC7 CYT1
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Topics Genes linked to topics (#21 - 30 )
ERG11 HAP1 HAP2 HAP3 HAP4 HEM13 HMG1 HMG2 HYP2 IXR1
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Jump to Summary Chart for:
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  • To go to the Locus page for a gene, click on the gene name.

Topics Genes linked to topics (#31 - 36 )
PET9 QCR2 QCR8 ROX1 SOD2 YHB1
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